Chemicals

Chemical Analysis

Chemistry is critical in developing new energy sources, creating innovative technologies, and making our world a better place to live.

Chemistry is critical in developing new energy sources, creating innovative technologies, and making our world a better place to live. To achieve this, industrial companies continually evolve innovative laboratory technologies, expand their product portfolios, and implement new production processes.

To readily assess the lubricant’s performance, testing and diagnosis of oils in-service is necessary. This is especially important to prolong engine life and avoid sudden and unforeseen damages to the engine. Fourier-Transform Infrared (FT-IR) spectroscopy utilizes the interaction of invisible infrared radiation and matter. This yields valuable molecular information and allows the identification of chemicals in a few seconds without consumables or additional chemicals.

 

The chemical industry produces a broad array of materials: Rubbers, dyes, salts, fertilizers, life sciences products, specialty chemicals, and consumer products such as detergents are just a few examples. The manufacturing processes, their intermediates, and final products need close monitoring.

Products

NMR Spectrometer (Fourier 80)


NMR Spectrometer (Fourier 80)

The Fourier, an 80 MHz high-performance nuclear magnetic resonance (NMR) benchtop spectrometer designed for the routine laboratory. With a cryogen-free magnet design, the Fourier makes NMR accessible in the lab where users and operators work. It can be installed in the fume hood or on the bench without the need for new infrastructure, providing easy maintenance and minimal cost of ownership.

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High-end Energy-Dispersive XRF spectrometer (S2 PUMA Series 2)

The only benchtop EDXRF which can professionally be integrated into fully automated laboratories. The S2 PUMA Series 2 Automation delivers results on elemental analysis 24/7.

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Vapor Concentration Monitor (IR-300)

Vapor Concentration Monitor (IR-300)

The Metal-Organic Chemical Vapor Deposition (MOCVD) process is widely used in the manufacture of LEDs, optical devices and other components. Liquid and solid precursors are delivered to the reaction chamber by controlling the temperature, pressure and the carrier gas flow rate (bubbling method).

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